bioRxiv · 10.1101/2022.06.16.496480
Phencyclidine and methamphetamine cause cognitive deficits by changing pyramidal neuron transmitter identity in the prefrontal cortex
Abstract
Cognitive deficits are a long-lasting consequence of drug use, yet the convergent mechanism by which classes of drugs with different pharmacological properties cause similar deficits is unclear. We find that both phencyclidine and methamphetamine, despite differing in their targets in the brain, impair memory by causing the same glutamatergic neurons in the medial prefrontal cortex to gain a GABAergic phenotype and decrease their expression of the vesicular glutamate transporter. Suppressing drug-induced gain of GABA with RNA-interference prevents the appearance of memory deficits. Drug-induced prefrontal hyperactivity drives this change in transmitter identity. Normalizing the activity of prefrontal glutamatergic neurons after drug-exposure reverses the gain of GABAergic phenotype and rescues the associated memory deficits. Increased activity of dopaminergic neurons in the ventral tegmental area is necessary and sufficient to produce the change in transmitter identity. The results reveal a shared and reversible mechanism by which exposure to different drugs causes cognitive deficits.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Pratelli, M., Thaker, A., Li, H., Godavarthi, S., Spitzer, N. C.. 2022-06-17. Phencyclidine and methamphetamine cause cognitive deficits by changing pyramidal neuron transmitter identity in the prefrontal cortex. https://doi.org/10.1101/2022.06.16.496480
Cite the original work for its findings. Save a collection to share your selection of sources.